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Enhanced resolution of fluorescence anisotropy decays by simultaneous analysis of progressively quenched samples. Applications to anisotropic rotations and to protein dynamics.

机译:通过同时分析逐步淬灭的样品可以增强荧光各向异性的分辨力。应用于各向异性旋转和蛋白质动力学。

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摘要

Enhanced resolution of rapid and complex anisotropy decays was obtained by measurement and analysis of data from progressively quenched samples. Collisional quenching by acrylamide was used to vary the mean decay time of indole or of the tryptophan fluorescence from melittin. Anisotropy decays were obtained from the frequency-response of the polarized emission at frequencies from 4 to 2,000 MHz. Quenching increases the fraction of the total emission, which occurs on the subnanosecond timescale, and thereby provides increased information on picosecond rotational motions or local motions in proteins. For monoexponential subnanosecond anisotropy decays, enhanced resolution is obtained by measurement of the most highly quenched samples. For complex anisotropy decays, such as those due to both local motions and overall protein rotational diffusion, superior resolution is obtained by simultaneous analysis of data from quenched and unquenched samples. We demonstrate that measurement of quenched samples greatly reduces the uncertainty of the 50-ps correlation time of indole in water at 20 degrees C, and allows resolution of the anisotropic rotation of indole with correlation times of 140 and 720 ps. The method was applied to melittin in the monomeric and tetrameric forms. With increased quenching, the anisotropy data showed decreasing contributions from overall protein rotation and increased contribution from picosecond tryptophan motions. The tryptophan residues in both the monomeric and the tetrameric forms of melittin displayed substantial local motions with correlation times near 0.16 and 0.06 ns, respectively. The amplitude of the local motion is twofold less in the tetramer. These highly resolved anisotropy decays should be valuable for comparison with molecular dynamics simulations of melittin.
机译:通过对逐步淬火样品的数据进行测量和分析,可以获得快速而复杂的各向异性衰减的增强分辨率。通过丙烯酰胺的碰撞猝灭用于改变吲哚或蜂毒肽中色氨酸荧光的平均衰减时间。从极化发射的频率响应在4到2,000 MHz的频率处获得各向异性衰减。淬火增加了总发射的比例,这发生在亚纳秒的时间尺度上,从而提供了有关皮秒旋转运动或蛋白质中局部运动的更多信息。对于单指数的亚纳秒各向异性衰减,可以通过测量高度淬灭的样品获得更高的分辨率。对于复杂的各向异性衰减,例如由于局部运动和整体蛋白质旋转扩散所引起的各向异性衰减,通过同时分析淬灭和未淬灭样品的数据可获得较高的分辨率。我们证明了淬灭样品的测量大大降低了20摄氏度水中吲哚的50 ps相关时间的不确定性,并允许以140和720 ps的相关时间分辨吲哚的各向异性旋转。该方法以单体和四聚体形式应用于蜂毒素。随着淬灭的增加,各向异性数据显示蛋白质总体旋转的贡献减少,皮秒色氨酸运动的贡献增加。蜂毒肽的单体形式和四聚体形式中的色氨酸残基均显示出明显的局部运动,相关时间分别接近0.16和0.06 ns。四聚体中局部运动的幅度小两倍。这些高度解析的各向异性衰减对于与蜂毒肽分子动力学模拟进行比较应该是有价值的。

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